The current objective was to evaluate six groups of titanium membranes in a rat calvarial defect model, regarding the surface treatment with or without calcium-phosphate coating and surface topography with no, small, or large holes. Critical size defects (Фâ=â8âmm, nâ=â42) were surgically created in rat calvaria, and then were treated by one of the six groups. Biopsies were obtained at 4âweeks (nâ=â5 per group) for micro-computed tomography and histomorphometric analyses. Fluorochrome bone markers were injected in two rats each group at 1 (Alizarin red), 3 (Calcein green) and 5âweeks (Oxytetracyclin yellow), followed by histological examination at 7âweeks to assess bone regeneration dynamic. At 4âweeks, the highest bone volume was observed in no-hole groups independent of surface treatment (pâ<â0.05). Treated groups with no-hole and large-hole membranes showed increased bone mineral density than with respective non-treated groups (pâ<â0.05). Histology exhibited an intimate bone formation onto the treated membranes, whereas non-treated ones demonstrated interposition of connective tissue, which was confirmed through bone contact percentages. The results suggest that occlusive membranes showed more bone formation than other perforated ones, and calcium-phosphate treatment induces intimate bone formation toward the membrane.
In vivo bone regeneration by differently designed titanium membrane with or without surface treatment: a study in rat calvarial defects.
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作者:Jang Yong-Seok, Moon So-Hee, Nguyen Thuy-Duong Thi, Lee Min-Ho, Oh Tae-Ju, Han A-Lum, Bae Tae-Sung
| 期刊: | Journal of Tissue Engineering | 影响因子: | 7.000 |
| 时间: | 2019 | 起止号: | 2019 Feb 28; 10:2041731419831466 |
| doi: | 10.1177/2041731419831466 | ||
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